Despite the potential of isotope measurements to improve our understanding of the global atmospheric molecular hydrogen (H2) cycle, few H2 isotope data have been published so far. Now, within the EUROpean network for atmospheric HYDRogen Observations and Studies project (EUROHYDROS), weekly to monthly air samples from six locations in a global sampling network have been analysed for H2 mixing ratio (m(H2)) and the stable isotopic composition of the H2 (δ(D,H2), hereafter referred to as δD). The time series thus obtained now cover one to five years for all stations. This is the largest set of ground station observations of δD so far. Annual average δD values are higher at the Southern Hemisphere (SH) than at the Northern Hemisphere (NH) stat...
The literature on the distribution, budget and isotope content of molecular hydrogen (H2) in the tro...
Rationale: Molecular hydrogen (H2) is an important gas for atmospheric chemistry, and an indirect gr...
Oceans are a net source of molecular hydrogen (H2) to the atmosphere. The production of marine H2 is...
Despite the potential of isotope measurements to improve our understanding of the global atmospheric...
With average mixing ratios (χ) around 550 ppb (nmole/mole), molecular hydrogen (H2) is the most abun...
AbstractMeasurements of the stable isotopic composition (δD(H2) or δD) of atmospheric molecular hydr...
Measurements of the stable isotopic composition (δD(H2) or δD) of atmospheric molecular hydrogen (H2...
Measurements of the stable isotopic composition (dD(H2) or dD) of atmospheric molecular hydrogen (H2...
Temporal and spatial variability of the stable isotopic composition of atmospheric molecular hydroge...
The isotopic composition of molecular hydrogen (H2) contains independent information for constrainin...
International audienceRationale: Molecular hydrogen (H2) is an important gas for atmospheric chemist...
International audienceRationale: Molecular hydrogen (H 2) is an important gas for atmospheric chemis...
More than 450 air samples that were collected in the upper troposphere – lower stratosphere (UTLS) r...
The literature on the distribution, budget and isotope content of molecular hydrogen (H2) in the tro...
Rationale: Molecular hydrogen (H2) is an important gas for atmospheric chemistry, and an indirect gr...
Oceans are a net source of molecular hydrogen (H2) to the atmosphere. The production of marine H2 is...
Despite the potential of isotope measurements to improve our understanding of the global atmospheric...
With average mixing ratios (χ) around 550 ppb (nmole/mole), molecular hydrogen (H2) is the most abun...
AbstractMeasurements of the stable isotopic composition (δD(H2) or δD) of atmospheric molecular hydr...
Measurements of the stable isotopic composition (δD(H2) or δD) of atmospheric molecular hydrogen (H2...
Measurements of the stable isotopic composition (dD(H2) or dD) of atmospheric molecular hydrogen (H2...
Temporal and spatial variability of the stable isotopic composition of atmospheric molecular hydroge...
The isotopic composition of molecular hydrogen (H2) contains independent information for constrainin...
International audienceRationale: Molecular hydrogen (H2) is an important gas for atmospheric chemist...
International audienceRationale: Molecular hydrogen (H 2) is an important gas for atmospheric chemis...
More than 450 air samples that were collected in the upper troposphere – lower stratosphere (UTLS) r...
The literature on the distribution, budget and isotope content of molecular hydrogen (H2) in the tro...
Rationale: Molecular hydrogen (H2) is an important gas for atmospheric chemistry, and an indirect gr...
Oceans are a net source of molecular hydrogen (H2) to the atmosphere. The production of marine H2 is...